Micro Cementitious Raised Access Floor

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Micro Cementitious Raised Access Floor
Details
The FINECO micro cementitious raised access floor is specially created for server rooms with different load-bearing needs. Through rigorous evaluation based on CE and CISCA standardized approaches, it is guaranteed to fully comply with FINECO’s quality guidelines.
Category
Micro Raised Access Floor
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Description

Suited for current facilities, FINECO's micro cementitious raised access floor stands out with its exceptional durability, effortless cable management, and outstanding load-bearing capacity. The modular nature of its design facilitates swift installation and flexibility in reconfiguring. Endowed with anti-static and fire-resistant qualities, it ensures a safer and more structured environment. A great fit for data centers, offices, and industrial locations-elevate efficiency and aesthetics using a solution designed for longevity.

 

Product specification

 

Model

Concentrated Load

Impact Load

Ultimate Load

Uniform Load

Rolling Load (N)

LB

N

N

N

N/㎡

10 times

10000 times

FS800

800

3560

536

10680

16100

3560

2670

FS1000

1000

4450

670

13350

23000

4450

3560

FS1250

1250

5560

780

16680

33000

5560

4450

FS1500

1500

6660

1005

19980

34500

6675

5340

FS2000

2000

8900

1340

26700

46000

8900

7120

* According to CE& CISCA's recommended test procedures for Access Floors

600*600mm/24'*24' (610*610mm) available

 

Product feature and application

 

FINECO's micro cementitious raised access floor is crafted to offer robust and dependable solutions for the needs of modern infrastructure. Constructed using high-strength, anti-corrosion materials and coated with fire-resistant substances, these floors provide outstanding load-bearing capacity and enduring durability. The modular nature of the design allows for quick installation, easy reconfiguration, and seamless access to underfloor utilities, thereby enhancing operational efficiency. The integrated cable management channels help optimize airflow and organize power/data cabling, minimizing clutter. Perfect for demanding scenarios such as data centers, industrial facilities, command control rooms, and laboratories, micro cementitious raised floors ensure safety, adaptability, and compliance with international standards, supporting dynamic spatial requirements with minimal maintenance efforts.

 

Product details

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FINECO micro cementitious raised access floor stands out with its precision-engineered aspects for top performance. ESD edge trims ensure perfect conductivity and static dissipation across the whole floor system. Each floor goes through a strict epoxy powder-coated anti-rust treatment, guaranteeing resistance to corrosion in moist or tough environments. A range of anti-static laminate options (HPL, PVC, ceramic) provides customizable looks while maintaining 10^4–10^9Ω surface resistance. Reinforced bolted stringers strengthen structural stability, enabling support of point loads up to 890kg. Fire-rated cores comply with ASTM E84 Class 1 standards. Optional gasket-sealed edges form air-tight compartments for clean room or pressurized situations, showing versatility in technical specs.

Product Qualification

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The FINECO micro cementitious raised access floor is built to the highest quality and durability criteria, originating from premium materials and precise manufacturing. The essential components employ high-grade ST14 and SPCC steels, recognized for their exceptional strength, resistance to corrosion, and formability, ensuring structural integrity in demanding environments.

 

The addition of lightweight foam concrete enhances performance effectively, lowering overall weight while delivering top-notch thermal insulation, sound absorption, and eco-friendly features. Production makes use of heavy-duty, high-tonnage presses to achieve uniform pressure and precise forming, eliminating material issues and guaranteeing dimensional accuracy.

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The fusion of sophisticated materials and high-grade industrial gear gives rise to offerings that continually exceed industry benchmarks for durability, trustworthiness, and operational superiority, aligning with the most exacting customer anticipations.

Shipping and Package

 

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FAQ

 

Q: 1. What are the common uses of micro cementitious raised access floor?

A: Micro cementitious raised access floors find common application in data centers, server rooms, office spaces, laboratories, control rooms, and other surroundings that demand cable management, airflow control, or the potential to adjust infrastructure layouts. They also provide electrical grounding and static protection in sensitive zones.

Q: 2. How is a micro cementitious raised access floor installed?

A: During installation, the subfloor is leveled, support pedestals are positioned, beams or stringers are attached, and floor panels are placed. The height can be adjusted with the help of pedestals to meet specific requirements. Seams between panels are sealed to ensure airtightness, and edge trim is added for safety, completing the installation.

Q: 3. How do I maintain a micro cementitious raised access floor?

A: Regular inspections to identify loose panels or damaged supports are of great significance. Vacuuming or sweeping the underfloor space is an effective way to remove debris. It is important to avoid heavy point loads that go beyond the rated capacity. Damaged panels should be replaced promptly, and cable organization should be ensured to prevent any obstructions.

Q: 4. What is the typical load capacity of a micro cementitious raised access floor?

A: Load capacities are not uniform. While standard systems can support 662 to 2000 pounds per square foot (psf), high-density areas such as data centers might require 2,000+ psf. For accurate information regarding specific installations, always check the manufacturer's specifications.

Q: 5. How do micro cementitious raised access floor improve airflow in data centers?

A: By forming a plenum underneath the floor, chilled air is dispersed through perforated tiles or vents to server racks. Warm air is vented above, resulting in a closed-loop cooling arrangement that elevates energy efficiency and averts hotspots.

 

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